Study and Teaching

Here you will find an overview of our courses and access to the e-learning portal as well as current Bachelor's and Master's thesis topics.

Thema Angebot
Automatic differentiation of anisotropic hyperelastic laws for nonlinear finite element analyses Masterarbeit
Implementation of arclength methods for nonlinear finite element simulations Masterarbeit
Implementation of axisymmetric spectral elements for wave propagation analysis Masterarbeit
Buckling analysis of cylindrical shells featuring multiple cutouts using CutBFS elements Masterarbeit
Dual mass lumping in the spectral element method Masterarbeit
Investigation of Model Order Reduction Techniques for the Shape Optimization of planar piezoelectric motors Masterarbeit
Physics-Augmented Neural Networks for Modeling Inelastic Material Behavior Masterarbeit
Implementation of methods to parallelize simulations in the time domain Masterarbeit
Implementation of a third medium contact method in finite element analysis Masterarbeit

You can also find further topics for project work or Bachelor's or Master's theses from other chairs and scientific departments on the notice board of the Faculty of Mechanical Engineering.

 

Topics advertised

If you are interested in writing a Bachelor's thesis or a Master's project on one of the topics presented, please do not hesitate to contact us! We will be happy to discuss with you how we can adapt or split the project to your individual requirements. Whether we carry out the preliminary work for a Master's thesis as part of a Master's project or adapt the scope accordingly for a Bachelor's thesis - we endeavour to work flexibly with you. There is also the possibility of working as a student assistant (HiWi) as part of these projects.
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Courses for Bachelor's programs

  Lang. / Sem.
Technische Mechanik 1  | E-Learning de / SoSe
Technische Mechanik 2/3  de / WiSe
Numerische Simulationsmethoden de / WiSe

   

Courses for Master's programs:

  Lang. / Sem.
Angewandte FEM | E-Learning de / SoSe
Finite-Elemente-Methode | E-Learning en / SoSe
Nichtlineare FEM en / WiSe
FEM-Modellierung dünnwandiger Strukturen en / WiSe
Angewandte Biomechanik  en / WiSe
Numerische Methoden der Biomechanik en / WiSe
Project: Simulation Methods in Science and Engineering  en / WiSe

Courses for Bachelor's programs:

  Lang. / Sem.
Technische Mechanik 1   de / SoSe
Technische Mechanik 2/3 |   E-Learning de / WiSe
Numerische Simulationsmethoden |  E-Learning  de / WiSe

   

Courses for Master's programs:

  Lang. / Sem.
Angewandte FEM de / SoSe
Finite-Elemente-Methode en / SoSe
Nichtlineare FEM |  E-Learning  en / WiSe
FEM-Modellierung dünnwandiger Strukturen |  E-Learning en / WiSe
Angewandte Biomechanik | tba en / WiSe
Numerische Methoden der Biomechanik |  E-Learning en / WiSe
Project: Simulation Methods in Science and Engineering  | E-Learning en / WiSe

Courses for Bachelor's programs

  Lang. / Sem.
Technische Mechanik 1  | E-Learning de / SoSe
Technische Mechanik 2/3  de / WiSe
Numerische Simulationsmethoden de / WiSe

   

Courses for Master's programs:

  Lang. / Sem.
Angewandte FEM | E-Learning de / SoSe
Finite-Elemente-Methode | E-Learning en / SoSe
Nichtlineare FEM en / WiSe
FEM-Modellierung dünnwandiger Strukturen en / WiSe
Angewandte Biomechanik  en / WiSe
Numerische Methoden der Biomechanik en / WiSe
Project: Simulation Methods in Science and Engineering  en / WiSe

Courses for Bachelor's programs

  Lang. / Sem.
Technische Mechanik 1   de / SoSe
Technische Mechanik 2/3 | E-Learning  de / WiSe
Numerische Simulationsmethoden | E-Learning  de / WiSe

   

Courses for Master's programs:

  Lang. / Sem.
Angewandte FEM  de / SoSe
Finite-Elemente-Methode en / SoSe
Nichtlineare FEM en / WiSe
FEM-Modellierung dünnwandiger Strukturen | E-Learning  en / WiSe
Angewandte Biomechanik | E-Learning  en / WiSe
Numerische Methoden der Biomechanik | E-Learning  en / WiSe
Project: Simulation Methods in Science and Engineering |  E-Learning en / WiSe

Last Modification: 30.06.2025 -
Contact Person: Webmaster